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Numerical investigation on flow and convective heat transfer of aviation kerosene at supercritical conditions 被引量:12

Numerical investigation on flow and convective heat transfer of aviation kerosene at supercritical conditions
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摘要 In this paper,characteristics of flow and convective heat transfer of China RP-3 kerosene in straight circular pipe were numerically studied.Navier-Stokes equations were solved using RNG k-turbulence model with low Reynolds number correction.The thermophysical and transport properties of the China RP-3 kerosene were calculated with a 10-species surrogate and the extended corresponding state method(ECS) combined with Benedict-Webb-Rubin equation.The independence of grids was first studied and the numerical results were then compared with experimental data for validation.Under flow conditions given in the paper,the results show that deterioration of convective heat transfer occurs when the wall temperature is slightly higher than the pseudo-critical temperature of kerosene for cases with wall heat flux of 1.2 and 0.8 MW/m 2.The degree of the heat transfer deterioration is weakened as the heat flux decreases.The deterioration,however,does not happen when the heat flux on the pipe wall is reduced to 0.5 MW/m 2.Based on the analysis of the near-wall turbulent properties,it is found that the heat transfer deterioration and then the enhancement are attributed partly to the change in the turbulent kinetic energy in the vicinity of pipe wall.The conventional heat transfer relations such as Sieder-Tate and Gnielinski formulas can be used for the estimation of kerosene heat convection under subcritical conditions,but they are not capable of predicting the phenomenon of heat transfer deterioration.The modified Bae-Kim formula can describe the heat transfer deterioration.In addition,the frictional drag would increase dramatically when the fuel transforms to the supercritical state.
出处 《Science China(Technological Sciences)》 SCIE EI CAS 2013年第2期416-422,共7页 中国科学(技术科学英文版)
基金 supported by the National Natural Science Foundation of China (Grant Nos. 10921062,10902115 and 11172309)
关键词 aviation kerosene SUPERCRITICAL convective heat transfer numerical study 航空煤油 超临界条件 对流换热 流动特性 Navier-Stokes方程 数值研究 传热恶化 超临界状态
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